The B3P86/6-31G* mechanistic results for the Wittig reaction of acetaldehyde, CH3CHO, in vacuo and in tetrahydrofuran (THF) solution in the IEF-PCM framework, with an unsubstituted trimethylphosphonium or triphenylphosphonium ylide, that is Me3PCH2 or Ph3PCH2, have been compared to those recently obtained at the same levels for the reaction of Ph3PCH2 with a bulky chiral aldehyde, (2S,3R)-2,4-dimethyl-3-pyrrol-1-yl-pentanal [TCA (submitted)], here named sys for short. The two model systems show distinct, but similar, behaviors that however differ from the large system one. In particular, betaine-type intermediates are not located in vacuo when Me3PCH2 is used, while only a gauche betaine is obtained using Ph3PCH2; the relevant barriers are anyway smaller than those found for sys. Conversely, in THF, the concerted and stepwise mechanisms are both represented and show TS1 / TSb barriers, that are negligibly small for sys. Thus, in contrast to assessed literature, models with methyl groups in place of phenyl rings and branched aldehyde chains show a different behavior from realistic systems and prevent inferring general rules from their use, suggesting to resort to Ph3PCH2 whose results in vacuo and in THF are closer to sys.

Dependence of the Wittig reaction mechanism on the environment and on the substituents at the aldehyde group and at the phosphonium ylide

Alagona G;Ghio C
2010

Abstract

The B3P86/6-31G* mechanistic results for the Wittig reaction of acetaldehyde, CH3CHO, in vacuo and in tetrahydrofuran (THF) solution in the IEF-PCM framework, with an unsubstituted trimethylphosphonium or triphenylphosphonium ylide, that is Me3PCH2 or Ph3PCH2, have been compared to those recently obtained at the same levels for the reaction of Ph3PCH2 with a bulky chiral aldehyde, (2S,3R)-2,4-dimethyl-3-pyrrol-1-yl-pentanal [TCA (submitted)], here named sys for short. The two model systems show distinct, but similar, behaviors that however differ from the large system one. In particular, betaine-type intermediates are not located in vacuo when Me3PCH2 is used, while only a gauche betaine is obtained using Ph3PCH2; the relevant barriers are anyway smaller than those found for sys. Conversely, in THF, the concerted and stepwise mechanisms are both represented and show TS1 / TSb barriers, that are negligibly small for sys. Thus, in contrast to assessed literature, models with methyl groups in place of phenyl rings and branched aldehyde chains show a different behavior from realistic systems and prevent inferring general rules from their use, suggesting to resort to Ph3PCH2 whose results in vacuo and in THF are closer to sys.
2010
Istituto per i Processi Chimico-Fisici - IPCF
Inglese
110
765
776
12
Sì, ma tipo non specificato
Density functional calculations
Reaction mechanisms
Wittig reaction
acetaldehyde
trimethylphosphonium ylide
In THF both the concerted and stepwise mechanisms for the two models can be compared with those produced by sys. Again the Ph3 model is in better agreement with sys, although differences exist between both models and sys. In particular, in the reference system, the barriers for TS1 and TSb are so low that cannot be located, whereas they are appreciable in the models, especially for the free energy values in solution including ZPE and thermal corrections. Furthermore, using the Me3 model for the stepwise mechanism, a transition state (TS120) between Ba and OP1 can be located. The related free energy surface in THF studied using as leading parameters PC1C2O and P–C1 confirms that OP1 is on the pathway to TS2 eventually yielding the products. Conversely, using the Ph3 model, an alternative pathway directly connecting Bg (or B’g) to TS2 cannot be ruled out. In summary, the behavior of both models is occasionally similar to that of the bulky system. If necessary, the Ph3 model is preferable in THF as well.
2
info:eu-repo/semantics/article
262
Alagona, G; Ghio, C
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/50657
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